DocumentCode :
1127353
Title :
Delineating fluid-filled region boundaries in optical coherence tomography images of the retina
Author :
Ferná, Delia Cabrera
Author_Institution :
Dept. of Ophthalmology, Univ. of Miami Miller Sch. of Med., FL, USA
Volume :
24
Issue :
8
fYear :
2005
Firstpage :
929
Lastpage :
945
Abstract :
We evaluate the ability of a deformable model to yield accurate shape descriptions of fluid-filled regions associated with age-related macular degeneration. Calculation of retinal thickness and volume by the current optical coherence tomography (OCT) system includes fluid-filled regions or lesions along with actual retinal tissue. In order to quantify these lesions independently from the retinal tissue, they must be outlined. A deformable model was applied to OCT images of retinas demonstrating cystoids and subretinal fluid spaces. Several implementation issues were addressed in order to choose appropriate parameters. The use of a nonlinear anisotropic diffusion filter to suppress speckle noise while at the same time preserving the edges of the original image was explored. Once the contours of the lesions were outlined, quantitative analysis of the surface area and volume of the lesions was performed. The deformable model could accurately outline fluid-filled regions within the retina. The detection method tested proved effective in capturing the complexity of fluid-filled regions in OCT images. Deformable models combined with nonlinear anisotropic diffusion filtering show promise in the detection of retinal features of interest for diagnosis in clinical OCT images. Thus, fluid-filled region detection may significantly aid in analysis of treatments and diagnosis.
Keywords :
biological tissues; biomedical optical imaging; eye; optical tomography; age-related macular degeneration; cystoids; deformable model; fluid-filled region boundaries; lesions; nonlinear anisotropic diffusion filter; optical coherence tomography; patient diagnosis; patient treatment; retinal feature detection; retinal thickness; retinal tissue; retinal volume; speckle noise; subretinal fluid spaces; Adaptive optics; Anisotropic magnetoresistance; Coherence; Deformable models; Lesions; Nonlinear optics; Optical filters; Retina; Shape; Tomography; Active contour models; age-related macular degeneration; deformable models; edge detection; lesion volume; ophthalmology; optical coherence tomography; retina; snakes; Algorithms; Artificial Intelligence; Body Fluids; Computer Simulation; Humans; Image Enhancement; Image Interpretation, Computer-Assisted; Macular Degeneration; Models, Biological; Pattern Recognition, Automated; Reproducibility of Results; Retina; Sensitivity and Specificity; Tomography, Optical Coherence;
fLanguage :
English
Journal_Title :
Medical Imaging, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0062
Type :
jour
DOI :
10.1109/TMI.2005.848655
Filename :
1490663
Link To Document :
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